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Control of dissipation in superconducting films by magnetic stray fields

机译:杂散磁场控制超导薄膜的耗散

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Hybrid superconducting/magnetic nanostructures on Si substrates have been built with identical physical dimensions but different magnetic configurations. By constructing arrays based on Co-dots with in-plane, out-of-plane, and vortex state magnetic configurations, the stray fields are systematically tuned. Dissipation in the mixed state of superconductors can be decreased (increased) by several orders of magnitude by decreasing (increasing) the stray magnetic fields. Furthermore, ordering of the stray fields over the entire array helps to suppress dissipation and enhance commensurability effects increasing the number of dissipation minima.
机译:硅衬底上的混合超导/磁性纳米结构已被构建为具有相同的物理尺寸但具有不同的磁性构型。通过基于具有平面内,平面外和涡流状态磁配置的Co-dots构造阵列,可以对杂散场进行系统地调谐。通过减小(增加)杂散磁场,可以将超导体混合态的耗散减小(增加)几个数量级。此外,在整个阵列上对杂散场进行排序有助于抑制耗散并增强可比性,从而增加了耗散最小值的数量。

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